SHREC'25 Track on Multiple Relief Patterns: Report and Analysis

Fuente: arXiv
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Main Authors: Paolini, Gabriele, Tortorici, Claudio, Berretti, Stefano, Youssef, Ahmed Hazem, Benhabiles, Halim, Cabani, Adnane, He, Ruiwen, Hammoudi, Karim, Ganapathi, Iyyakutti Iyappan, Ali, Syed Sadaf, Velayudhan, Divya, Assefa, Maregu, Werghi, Naoufel
Format: Preprint
Published: 2025
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author Paolini, Gabriele
Tortorici, Claudio
Berretti, Stefano
Youssef, Ahmed Hazem
Benhabiles, Halim
Cabani, Adnane
He, Ruiwen
Hammoudi, Karim
Ganapathi, Iyyakutti Iyappan
Ali, Syed Sadaf
Velayudhan, Divya
Assefa, Maregu
Werghi, Naoufel
author_facet Paolini, Gabriele
Tortorici, Claudio
Berretti, Stefano
Youssef, Ahmed Hazem
Benhabiles, Halim
Cabani, Adnane
He, Ruiwen
Hammoudi, Karim
Ganapathi, Iyyakutti Iyappan
Ali, Syed Sadaf
Velayudhan, Divya
Assefa, Maregu
Werghi, Naoufel
contents This SHREC 2025 track focuses on the recognition and segmentation of relief patterns embedded on the surface of a set of synthetically generated triangle meshes. We report the methods proposed by the participants, whose performance highlights the inherent complexity of solving the problem, which is still open. Then, we discuss the critical aspects of the proposed tasks, highlight the limitations of current techniques, and outline possible directions for future research. All resources and track details are available at the official track webpage: https://sites.google.com/unifi.it/shrec25-relief-pattern.
format Preprint
id arxiv_https___arxiv_org_abs_2508_09909
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle SHREC'25 Track on Multiple Relief Patterns: Report and Analysis
Paolini, Gabriele
Tortorici, Claudio
Berretti, Stefano
Youssef, Ahmed Hazem
Benhabiles, Halim
Cabani, Adnane
He, Ruiwen
Hammoudi, Karim
Ganapathi, Iyyakutti Iyappan
Ali, Syed Sadaf
Velayudhan, Divya
Assefa, Maregu
Werghi, Naoufel
Computational Geometry
This SHREC 2025 track focuses on the recognition and segmentation of relief patterns embedded on the surface of a set of synthetically generated triangle meshes. We report the methods proposed by the participants, whose performance highlights the inherent complexity of solving the problem, which is still open. Then, we discuss the critical aspects of the proposed tasks, highlight the limitations of current techniques, and outline possible directions for future research. All resources and track details are available at the official track webpage: https://sites.google.com/unifi.it/shrec25-relief-pattern.
title SHREC'25 Track on Multiple Relief Patterns: Report and Analysis
topic Computational Geometry
url https://arxiv.org/abs/2508.09909